BACKGROUND OF THE INVENTION
[0001] This invention relates to a circuit interrupter and more particularly to a circuit
interrupter provided with an automatic trip mechanism.
[0002] A conventional circuit interrupter to which the present invention pertains will be
described in conjunction with Figs. 1 to 5. Fig. 1 is a sectional side view of the
conventional circuit interrupter, Fig. 2 is a partial enlarged sectional view of Fig.
1 and showing the ON position, Fig.3 is a view similar to Fig. 2, but illustrating
the OFF position, Fig. 4 is a view similar to Fig. 2, but illustrating the TRIP position,
and Fig. 5 is a view similar to Fig. 2, but illustrating the electromagnetically operated
position.
[0003] In these figures, the circuit interrupter comprises an electrically insulating housing
1 composed of a base 1a and a cover 1b. A stationary source side conductor 2 is mounted
on the base 1a and has a stationary contact 3 secured thereon. Mounted in the housing
1 is an automatic trip unit 4 which comprises a trip unit of a thermally responsive
type, an electromagnetic type or an electronic type. A stationary load side conductor
5 is electrically connected to the automatic trip unit 4. A movable contact 6 is secured
to a movable member 7 which is electrically connected to the automatic trip unit 4
through a flexible conductor 8 and a connector 9. The movable member 7 is supported
by a contact arm assembly 10 comprising a first contact arm 10a connected to an operating
mechanism 20 which will be described in more detail later, and a second contact arm
10b on which the movable member 7 is pivotally supported by a first pin 11. The first
contact arm 10a of each pole unit is also connected to a cross bar 13 for the simultaneous
movement of the pole units. The first contact arm 10a and the second contact arm 10b
are independently pivotally supported within the housing by a pivot pin 12. The first
contact arm 10a has formed therein a first guide hole 14 extending substantially in
the direction of the movement of the contact arm 10a. The second contact arm 10b has
formed therein a second elongated guide hole 15 extending in the direction of extension
of the arm 10b. A sliding pin 16 extends through the first and the second guide holes
14 and 15 to limit the relative pivotal movement between the first and the second
contact arms 10a and 10b. The sliding pin 16 is biased toward the free end of the
contact arm 10b by a tension spring 17 mounted between the sliding pin 16 and the
pin 11 pivotally connecting the movable member 7 to the second contact arm 10b. In
order to provide a contact biasing force between the movable and the stationary contacts
6 and 3, a contact pressure spring 18 is disposed between the movable member 7 and
the second contact arm 10b. An operating handle 19 is connected to an operating mechanism
20 comprising a releasable cradle 20a having a stop pin 21 and a pair of toggle links
20b and 20c connected between the cradle 20a and the first contact arm 10a by pivot
pins 22a and 22b. As is well known, an arc extinguisher 23 is disposed in such a way
as to extinguish the arc generated between the separated contacts when they separate.
[0004] When the circuit interrupter is in the ON position shown in Figs. 1 and 2, an electric
current flows from the source side stationary conductor 2 to the load side stationary
conductor 5 through the stationary contact 3, the movable contact 6, the movable member
7, the flexible conductor 8, the connector 9 and the automatic trip unit 4 in the
named order. When the operating handle 19 is moved into the OFF position as shown
by an arrow 24 of Fig. 2, the contact arm assemble 10 is lifted by the operating mechanism
20 so that the movable contact 6 together with the movable member 7 is moved away
from the stationary contact 3 as shown in Fig. 3 to open the contacts 3 and 6. At
this time, since the sliding pin 16 is positioned in the recessed portion 14a of the
guide hole 14 due to the biasing function of the tension spring 17, the second contact
arm 10b is rotated about the pivot pin 12 into the opening direction by the operating
mechanism 20 together with the first contact arm 10a until it abuts against the stopper
pin 21.
[0005] In the ON position shown in Figs. 1 and 2, when an overload current flows through
the circuit interrupter, the automatic trip unit 4 is actuated to release the cradle
20a of the operating mechanism 20 to allow it to rotate in the direction of an arrow
25 of Fig. 2. Then, the toggle links 20b and 20c of the operating mechanism 20 rotate
the contact arm assembly 10 in the clockwise direction in the figure to separate the
movable contact 6 from the stationary contact 3, thereby interrupting the overload
current. This is the so-called tripped position. During this operation, since the
sliding pin 16 is positioned within the recessed portion 14a of the guide hole 14
due to the tension spring 17 similarly to the OFF position shown in Fig. 3, the second
contact arm 10b is rotated clockwise about the pivot shaft 12 by the operating mechanism
20 together with the first contact arm 10a until it abuts against the stopper pin
21.
[0006] When a large current such as a short-circuit current flows through the circuit interrupter
in the ON position shown in Figs. 1 and 2, an electromagnetic repulsive force generated
between the stationary conductor 2 and the movable member 7 causes the movable member
7 to be immediately separated from the stationary conductor 2 as shown in Fig. 5.
At this time, since the operating mechanism 20 does not allow the first contact arm
10a to be actuated because it is not actuated itself, the second contact arm 10b rotates
clockwise as shown by an arrow 26 shown in Fig. 2 about the shaft 12 by moving the
sliding pin 16 against the spring force of the tension spring 17 from the recessed
portion 14a along the guide hole 14 until it abuts against the end portion 14b of
the guide hole 14. An electromagnetic repulsive force generates very quickly upon
the occurence of a short-circuit current and therefore the contact separation is achieved
before the operating mechanism 4 is actuated, providing a high current limiting capability.
[0007] Immediately after the electromagnetic repulsive separation is achieved, the automatic
trip unit 4 trips and rotates the first contact arm 10a to return the sliding pin
16 into the recessed portion 14a of the guide hole 14 to take up the tripped position
shown in Fig. 4.
[0008] With the conventional circuit interrupter as above described, since the circuit interrupter
is provided with the automatic trip unit 4 assembled within the interrupter housing,
a circuit interrupter must be manufactured separately for each of the types of automatic
trip unit, such as an electronic trip unit or a thermally responsive electromagnetic
trip unit.
[0009] US-A 4 281 359 discloses a static trip unit comprised of a current transformer module
and an electronic programmer module mated together for incorporation in a molded case
circuit breaker. The current transformer modules and programme modules are separately
interchangeable to change breaker current ratings and functional capabilities.
[0010] US-A 4 037 184 discloses a multi-pole circuit breaker provided with a solid state
trip unit having a removable and replaceable rating plug. The device is provided in
a housing which encloses contact means, latch means and said trip means. Interlock
means are provided in operative engagement with the latch means to release the latch
and thereby trip an operating mechanism for opening and closing the contact means.
[0011] The German published application DE-OS 27 16 446 discloses trip means for an electric
circuit breaker. The trip means for an interrupter switch are removably placed in
a housing, where means for determining overloads are provided. The means for determining
overload on each pole comprise a magnetic circuit. The magnetic circuit comprises
two separable parts, one of which is fixed to the housing and the other of which is
fixed to the trip means.
SUMMARY OF THE INVENTION
[0012] Accordingly, an object of the present invention is to provide a circuit interrupter
in which an automatic trip unit such as an electronic trip unit or a thermally responsive
electromagnetic trip unit mounted in the housing can be easily replaced with other
types of automatic trip units.
[0013] Another object of the present invention is to provide a circuit interrupter which
can be interchangeably used with various types of automatic trip units.
[0014] A further object of the present invention is to provide a circuit interrupter which
need not be manufactured separately according to the type of automatic trip unit,
such as an electronic trip unit and a thermally responsive electromagnetic trip unit.
[0015] In accordance with the present invention, a circuit interrupter comprising an interrupting
unit and an automatic trip unit are provided as defined in the claims. The automatic
trip unit is replaceable and exchangeable and comprises a trip rod provided in a position
capable of actuating a latch mechanism on the interrupting unit.
[0016] The trip unit is selected from a plurality of trip units comprising an electronic
trip unit and a thermally responsive electromagnetic trip unit, where each type of
trip unit has identical outer configuration. The configuration includes a tapering
bottom portion fitting into a recess portion having a complementary shape formed in
a base of a housing for the circuit interrupter.
[0017] Furthermore, the trip rod is arranged in the trip unit itself and projects therefrom
to actuate the latch mechanism of the interrupting unit by a push movement.
[0018] The automatic trip unit of the circuit interrupter of the present invention is a
replaceable unit selected from a plurality of differing type trip units including
electronic trip units and thermally responsive electromagnetic trip units, and the
trip unit can be operatively connected to the interrupting unit of the circuit interrupter.
Therefore, automatic trip units such as electronic trip units or thermally responsive
electromagnetic trip units mounted in the housing can be easily replaced with other
types of automatic trip units. Further, the circuit interrupter need not be manufactured
separately according to the type of automatic trip unit.
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present invention will now be described in terms of the preferred embodiment
of the present invention taken in conjunction with the accompanying drawings, in which:
Fig. 1 is a sectional side view of a conventional circuit interrupter;
Fig. 2 is a partial enlarged sectional view of Fig. 1 and showing the ON position;
Fig. 3 is a view similar to Fig. 2, but illustrating the OFF position;
Fig. 4 is a view similar to Fig. 2, but illustrating the TRIP position; and
Fig. 5 is a view similar to Fig. 2, but illustrating the electromagnetically operated
position;
Fig. 6 is a plan view of a circuit interrupter in one embodiment of the present invention;
Fig. 7 is, a sectional side view of the circuit interrupter in one embodiment of the
present invention taken along line VII-VII of Fig. 6;
Fig. 8 is a side view of an electronic type automatic trip unit; and
Fig. 9 is a side view of a thermally responsive electromagnetic, automatic trip unit.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0020] An embodiment of the present invention will now be described in conjunction with
Figs. 6 to 9. Fig. 6 is a plan view of a circuit interrupter of the present invention,
Fig. 7 is a sectional side view of the circuit interrupter of the present invention
taken along line VII-VII of Fig. 6, Fig. 8 is a side view of an electronic type automatic
trip unit, and Fig. 9 is a side view of a thermally responsive electromagnetic, automatic
trip unit. The same reference numerals in the figures designate identical or corresponding
components.
[0021] In Figs. 6 to 9, an automatic trip unit 27 for tripping the interrupter unit shown
in Figs. 6 and 7 is a replaceable unit selected from a plurality of differing types
including electronic type and thermally responsive electromagnetic types, and operatively
connectable to the interrupting unit. Fig. 8 shows one example of an electronic trip
unit 27A which comprises an electronic trip mechanism 32, and a housing 33 for housing
the electronic trip mechanism 32, and Fig. 9 shows one example of a thermally responsive
electromagnetic trip unit 27B which comprises a thermally responsive electromagnetic
trip mechanism 34 housed in the housing 33. It is to be noted that the outer configuration
of the housing 33 of the unit 27A is identical to that of the unit 27B.
[0022] The electronic trip unit 27A has, for each pole, a terminal conductor 27a, and a
shunt connection conductor 27b project from the housing 33. In the assembled state,
the terminal conductors 27a extend toward and are connected to the load side terminals
of the circuit interrupter. The shunt connection conductors 27b are connectable to
the connecting conductors 9 by fasteners such as nuts and stud bolts 31. The electronic
trip unit 27A also has a single trip rod 27c projecting from the housing 33 for activating
the operating mechanism 20 for the central pole through a latch mechanism 30 which
will be described in more detail later. Thus, when the electronic trip unit 27A is
installed in the interrupting unit of the circuit interrupter as shown in Fig. 7,
it is connected between the load side terminal and the connecting conductor 9 so that
the current flowing through the circuit interrupter flows through the electronic trip
unit 27A, and the trip rod 27c is in a position capable of acting on the latch mechanism
30. The housing 33 has a land portion 27d which may serve as a display for displaying
the kind of automatic trip unit used. Thus, the outer configuration of trip units
27A and 27B including the conductors 27a and 27b and the trip rod 27c are identical
to each other, so that the trip units 27A and 27B are interchangeable with respect
to the interrupting unit of the circuit interrupter.
[0023] The housing 1 of the circuit interrupter is so configured as to accommodate the automatic
trip unit 27A or 27B therein. The base 1a of the housing 1 has a recessed portion
28 in which the bottom portion of the trip unit 27A or 27B is received, and the cover
1b of the housing 1 has a window 29 into which the land portion 27d of the trip unit
27A or 27B is inserted so that the land portion 27d is exposed to the exterior.
[0024] When an overcurrent flows through the circuit interrupter, the current flowing through
the conductors 27a and 27b actuates the electronic trip mechanism 32 of the electronic
trip unit 27A or the thermally responsive electromagnetic trip unit 27B to push forward
the trip rod 27c, which then actuates the latch mechanism 30 on the interrupting unit
of the interrupter to release the latching engagement between the latch mechanism
30 and the cradle 20a of the operating mechanism to open the contacts 3 and 6 in a
manner known in the art.
[0025] While the automatic trip unit 27A or 27B are illustrated in the above embodiments
as having a width extending over three poles of the three-pole circuit interrupter,
the width dimension of the trip unit 27A or 27B may be determined independent of the
number of the poles of the circuit interrupter.
1. A circuit interrupter, comprising
- an interrupting unit (20) provided for opening separable first and second contacts
(3, 6) and
- an automatic trip unit (27A, 27B) for tripping the interrupting unit (20) in order
to open the separable first and second contacts (3, 6) in response to an overcurrent,
- wherein the automatic trip unit (27A, 27B) is a replaceable and exchangeable unit,
- and wherein a trip rod (27c) is provided in a position capable of actuating a latch
mechanism (30) operating on the interrupting unit (20) by a push movement,
characterized in that
- said trip unit (27A, 27B) is selectable from a plurality of trip units (27A, 27B)
including an electronic trip unit (27A) and a thermally responsive electromagnetic
trip unit (27B), which trip units (27A, 27B) of the respective technical types have
identical outer configurations,
- wherein each respective trip unit (27A, 27B) has a configuration provided with a
tapering bottom portion fitting into a recess portion (28) having a complementary
shape formed in a base (1a) of a housing (1) of the circuit interrupter, and is further
provided with a land portion (27d) at the top side of the trip unit (27A, 27B) inserted
into a window (29) having a complementary shape in a cover (1b) of the housing (1),
so that the land portion (27d) serving as a display is exposed to the exterior, and
- said trip rod (27c) is arranged in said trip unit (27A, 27B) and projects therefrom.
2. The circuit interrupter according to claim 1, wherein each respective automatic trip
unit (27A, 27B) has a terminal conductor (27a) and a shunt connection conductor (27b)
for each pole of the circuit interrupter, and wherein the single trip rod (27c) is
provided projecting from the trip unit (27A, 27B) and mounted for activating the interrupting
unit (20) for a central pole through the latch mechanism (30).
1. Leistungstrennschalter, der folgendes aufweist:
- eine Trenneinheit (20), die vorgesehen ist, um einen ersten und einen zweiten trennbaren
Kontakt (3, 6) zu öffnen, und
- eine automatische Auslöseeinheit (27A, 27B), um die Trenneinheit (20) auszulösen,
um den ersten und den zweiten trennbaren Kontakt (3, 6) aufgrund eines Überstroms
zu öffnen,
- wobei die automatische Auslöseeinheit (27A, 27B) eine auswechselbare und austauschbare
Einheit ist
- und wobei eine Auslösestange (27c) in einer Position vorgesehen ist, in der sie
fähig ist, einen Verriegelungsmechanismus (30) zu betätigen, der auf die Trenneinheit
(20) durch eine Schiebebewegung wirkt,
dadurch gekennzeichnet,
- daß die Auslöseeinheit (27A, 27B) aus einer Vielzahl von Auslöseeinheiten (27A,
27B) auswählbar ist, die eine elektronische Auslöseeinheit (27A) und eine wärmeempfindliche
elektromagnetische Auslöseeinheit (27B) umfassen, wobei die Auslöseeinheiten (27A,
27B) der jeweiligen technischen Typen identische Außenkonfigurationen haben,
- wobei jede entsprechende Auslöseeinheit (27A, 27B) eine Konfiguration hat, die mit
einem sich verjüngenden unteren Bereich versehen ist, der in einen Ausnehmungsbereich
(28) mit einer komplementären Gestalt paßt, der in einer Basis (1a) eines Gehäuses
(1) des Leistungstrennschalters gebildet ist, und die ferner mit einem Stegbereich
(27d) an der oberen Seite der Auslöseeinheit (27A, 27B) versehen ist, der in ein Fenster
(29) mit einer komplementären Gestalt in einer Abdeckung (1b) des Gehäuses (1) eingesetzt
ist, so daß der als Anzeige dienende Stegbereich (27d) nach außen freiliegt,
- und daß die Auslösestange (27c) in der Auslöseeinheit (27A, 27B) angeordnet ist
und aus dieser vorsteht.
2. Leistungstrennschalter nach Anspruch 1,
wobei jede entsprechende automatische Auslöseeinheit (27A, 27B) einen Anschlußleiter
(27a) und einen Nebenschlußleiter (27b) für jeden Pol des Leistungstrennschalters
aufweist und wobei die einzige Auslösestange (27c) so vorgesehen ist, daß sie aus
der Auslöseeinheit (27A, 27B) vorspringt, und angebracht ist, um die Trenneinheit
(20) für einen zentralen Pol durch den Verriegelungsmechanismus (30) zu betätigen.
1. Coupe-circuit comportant
- une unité d'interrupteur (20) prévue pour ouvrir des premier et second contacts
séparables (3, 6) et
- une unité de déclenchement automatique (27A, 27B) pour déclencher l'unité d'interrupteur
(20) afin d'ouvrir les premier et second contacts séparables (3, 6) en réponse à une
surintensité,
- dans lequel l'unité de déclenchement automatique (27A, 27B) est une unité remplaçable
et échangeable,
- et dans lequel une tige de déclenchement (27c) est prévue dans une position apte
à actionner un mécanisme de verrouillage (30) agissant sur l'unité d'interrupteur
(20) par un mouvement de poussée,
caractérisé en ce que
- ladite unité de déclenchement (27A, 27B) peut être choisie à partir d'une pluralité
d'unités de déclenchement (27A, 27B) comprenant une unité de déclenchement électronique
(27A) et une unité de déclenchement électromagnétique thermosensible (27B), lesquelles
unités de déclenchement (27A, 27B) des types techniques respectifs présentent des
configurations externes identiques,
- dans lequel chaque unité de déclenchement respective (27A, 27B) présente une configuration
munie d'une partie inférieure amincie ajustée dans une partie en creux (28) ayant
une forme complémentaire ménagée dans une base (1a) d'un boîtier (1) du coupe-circuit,
et elle est munie en outre d'une partie vierge (27d) au sommet de l'unité de déclenchement
(27A, 27B) insérée dans une fenêtre (29) ayant une forme complémentaire dans un couvercle
(1b) du boîtier (1), de sorte que la partie vierge (27d) servant en tant qu'affichage
soit apparente à l'extérieur, et
- ladite tige du déclenchement (27c) est agencée dans ladite unité de déclenchement
(27A, 27B) et fait saillie de celle-ci.
2. Coupe-circuit selon la revendication 1, caractérisé en ce que chaque unité de déclenchement
automatique respective (27A, 27B) comporte un conducteur terminal (27a) et un conducteur
monté en parallèle (27b) pour chaque pôle du coupe-circuit, et dans lequel l'unique
tige de déclenchement (27c) est prévue en saillie de l'unité de déclenchement (27A,
27B) et montée pour actionner l'unité interruptrice (20) pour un pôle central par
l'intermédiaire du mécanisme de verrouillage (30).